JPH02219790A - Condensed drink feeding equipment - Google Patents

Condensed drink feeding equipment

Info

Publication number
JPH02219790A
JPH02219790A JP1033059A JP3305989A JPH02219790A JP H02219790 A JPH02219790 A JP H02219790A JP 1033059 A JP1033059 A JP 1033059A JP 3305989 A JP3305989 A JP 3305989A JP H02219790 A JPH02219790 A JP H02219790A
Authority
JP
Japan
Prior art keywords
water
concentrated beverage
memory card
coffee
concentrated
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
JP1033059A
Other languages
Japanese (ja)
Inventor
Takahiro Kita
北 貴裕
Hideo Yamamoto
秀夫 山本
Shunichi Hata
秦 俊一
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Panasonic Holdings Corp
Original Assignee
Matsushita Refrigeration Co
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Matsushita Refrigeration Co filed Critical Matsushita Refrigeration Co
Priority to JP1033059A priority Critical patent/JPH02219790A/en
Publication of JPH02219790A publication Critical patent/JPH02219790A/en
Pending legal-status Critical Current

Links

Abstract

PURPOSE:To make a further automation possible and standardize the quality of coffee by a method wherein a quantitative mixing is given to a condensed drink liquid, which is extracted from a condensed drink storage tank by a prescribed quantity, and water, and at the same time, the setting can be changed by one touch motion by a memory card. CONSTITUTION:When a memory card 25 is detected at a card reader 26, reading of the content is performed. A micro-computer 33 in a control circuit 24 computes an operating pulse number C for a condensed drink extracting coil 22 and an operating time D for a water feeding valve 16 conforming to a set mixing ratio A and consumption unit quantity B. When an extracting switch 5 is pressed, the condensed liquid extracting coil 22 operates by the pulse number C, and a prescribed quantity of the condensed drink liquid is extracted. At the same time, the water feeding valve 16 operates for the time D, and a prescribed quantity of water is fed to a cool water tank from waterworks through a water feeding pipe. By this water pressure, cool water in the cool water tank is fed from a water feeding port 16 through the water feeding pipe. Then, the condense drink liquid and cool water are mixed, and one cup portion of coffee is fed from a nozzle.

Description

【発明の詳細な説明】 産業上の利用分野 本発明は、濃縮飲料液と温水または冷水とを混合供給す
るIII縮飲料供給装置に関するものである。
DETAILED DESCRIPTION OF THE INVENTION Field of the Invention The present invention relates to a III-condensed beverage supply device that mixes and supplies concentrated beverage liquid and hot or cold water.

従来の技術 喫茶店或いはレヌトラン等の飲食店においては、労務費
の高騰や労働力の不足のため、コーヒーの抽出を自動化
しようとする傾向にあり、自動化したコーヒーサーバー
が数多く商品化されている。
BACKGROUND OF THE INVENTION Due to rising labor costs and labor shortages, cafes and restaurants such as restaurants have been trying to automate coffee extraction, and many automated coffee servers have been commercialized.

以下図面を参照しながら、上述したような従来のコーヒ
ーサーバーについて説明する。
The conventional coffee server as described above will be described below with reference to the drawings.

第6図は従来のコーヒーサーバーの断面図を示すもので
ある。第6図において、1は加熱ヒータ2を有した貯湯
タンク、3は給水タンクであり貯湯タンク1と給水パイ
プ4を介して連通している。
FIG. 6 shows a sectional view of a conventional coffee server. In FIG. 6, 1 is a hot water storage tank having a heater 2, and 3 is a water supply tank, which communicates with the hot water storage tank 1 via a water supply pipe 4.

6はスプレーノズルであり、その開口部がチャンバー6
の中央に位置している。チャンバー6は中に紙フィルタ
を徹き、ドリップ用のコーヒー粉を入れている。7は抽
出されたコーヒーを溜めるデカンタ−である。
6 is a spray nozzle, the opening of which is the chamber 6
It is located in the center of Chamber 6 has a paper filter inside, and drip coffee powder is placed inside. 7 is a decanter for storing extracted coffee.

以上のように構成されたコーヒーサーバーについて、以
下その動作について説明する。
The operation of the coffee server configured as described above will be explained below.

まず準備としてチャンバー6′に紙フィルタを敷きコー
ヒー粉を所定量大れる。次に、給水タンク3′に所定量
の水を入れると、給水タンク3にたまった後、給水パイ
プ4を通って徐々に貯湯タンク1が満水になり、加熱ヒ
ータ2により加熱される。
First, as a preparation, a paper filter is placed in the chamber 6' and a predetermined amount of coffee powder is poured into the chamber 6'. Next, when a predetermined amount of water is poured into the water supply tank 3', the water accumulates in the water supply tank 3, passes through the water supply pipe 4, gradually fills the hot water storage tank 1, and is heated by the heater 2.

そして、スプレーノズル5から吐出した熱湯が、チャン
バー内のコーヒー粉の上に散水さし、コーヒーを抽出す
るものである。
Then, the hot water discharged from the spray nozzle 5 is sprinkled onto the coffee powder in the chamber to extract the coffee.

発明が解決しようとする課題 しかしながら上記のような構成では、コーヒーを抽出す
る準備として紙フィルターを敷きコーヒー粉を必要分量
大れる作業を必要とし、また後処理として紙フィルター
とコーヒーかすを捨てる作業を必要とするので人手がか
かるという問題点があった。また、通常6〜10杯分ま
とめてコーヒーを抽出するので、余った場合に2〜3時
間放置すると空気との接触により酸化が進行して味が劣
化するという問題点があった。さらにコーヒー原料メー
カーが飲食店にコーヒー原料を卸す際に、コーヒーの味
覚品質を確保するためコーヒーの濃さや量などをコーヒ
ーの種類に応じて可変させ所定の品質にすることが要望
されていたが、このようなコーヒーサーバーでは一回一
回入れるたびに濃さや量が変わってしまうため、飲食店
でのコーヒー品質を一定にできなかった。
Problems to be Solved by the Invention However, with the above configuration, it is necessary to place a paper filter and add the necessary amount of coffee grounds in preparation for extracting coffee, and also to dispose of the paper filter and coffee grounds as post-processing. There was a problem in that it required a lot of manpower. Furthermore, since 6 to 10 cups of coffee are usually extracted at once, if there is any leftover coffee left for 2 to 3 hours, oxidation progresses due to contact with air and the taste deteriorates. Furthermore, when coffee raw material manufacturers wholesale coffee raw materials to restaurants, they are required to vary the strength and amount of coffee depending on the type of coffee in order to ensure the taste quality of the coffee. With such a coffee server, the strength and amount of coffee would change each time it was poured, making it impossible to maintain consistent coffee quality at restaurants.

本発明は上記問題点に鑑み、濃縮飲料液(コーヒー)貯
蔵器から定量抽出した濃縮飲料液と水とを定量混合する
とともにメモリーカードによりワンタッチで設定可変と
することにより、より自動化しさらにコーヒー品質の一
定化がはかれる濃縮飲料供給装置を提供するものである
In view of the above-mentioned problems, the present invention has been developed to further automate the process by mixing water and a concentrated beverage extracted from a concentrated beverage (coffee) storage device in a quantitative manner, and by making the settings variable with a single touch using a memory card. The purpose of the present invention is to provide a concentrated beverage dispensing device that can maintain a constant concentration of beverages.

課題を解決するだめの手段 上記問題点を解決するため本発明の濃縮飲料供給装置は
、濃縮飲料液貯蔵器から濃縮飲料液を抽出する濃縮飲料
液抽出手段と、水を給水する給水手段と、濃縮飲料液の
量と水の量とを設定するメモリーカードと、希釈飲料液
を消費単位量供給する抽出スイッチと、メモリーカード
の内容を読みとり設定した旋網飲料液量と水量に基づき
濃縮飲料液抽出手段のバルヌ数と給水手段の駆動時間を
演算し制御する演算制御回路とを設けたものである。
Means for Solving the Problems In order to solve the above problems, the concentrated beverage supply device of the present invention includes: a concentrated beverage extraction means for extracting concentrated beverage from a concentrated beverage storage; a water supply means for supplying water; A memory card that sets the amount of concentrated beverage liquid and the amount of water, an extraction switch that supplies the consumption unit amount of diluted beverage liquid, and a concentrated beverage liquid extraction device based on the set amount of drinking liquid and water by reading the contents of the memory card. It is provided with an arithmetic control circuit that calculates and controls the Barne number of the means and the drive time of the water supply means.

作  用 この構成によって、人手を要さずにワンタッチでアイス
コーヒー、ホットコーヒー等の飲料が供給できるもので
あり、後処理として紙フィルターとコーヒーかすを捨て
る作業も不要である。また、1杯毎の抽出が可能であシ
、メモリーカードによりワンタッチでコーヒーの味の設
定が変更できるとともにコーヒー1杯毎の濃さや量など
品質が一定に保てることとなる。
Function: With this configuration, beverages such as iced coffee and hot coffee can be supplied with a single touch without requiring any human intervention, and there is no need to dispose of paper filters and coffee grounds as post-processing. In addition, it is possible to brew each cup of coffee, and with a memory card, the coffee flavor settings can be changed with a single touch, and the quality of each cup of coffee, such as strength and quantity, can be maintained constant.

実施例 以下本発明の一実施例について、図面を参照しながら説
明する。
EXAMPLE Hereinafter, an example of the present invention will be described with reference to the drawings.

第1図において、1は濃縮飲料供給装置の筐体である。In FIG. 1, 1 is a housing of a concentrated beverage supply device.

図において、2は操作部であシ、電源スィッチ3、電源
ランプ4、抽出スイッチ6を有している。
In the figure, reference numeral 2 includes an operating section, a power switch 3, a power lamp 4, and an extraction switch 6.

第2図は断面図であり、図において、6は断熱材7でお
おわれた冷水タンクであり、圧縮機8.凝縮器9.冷水
タンク6に巻きつけた蒸発器10゜濃縮飲料貯蔵器冷蔵
室11に巻きつけた蒸発器12゜送7[13よ構成る冷
却システムの上部に載架している。14は背面に設けら
れた注水口であり、水道と直結するものである。16は
前記注水口14と冷水タンク6とを連通する注水パイプ
であり、その間に水量制御を行う注水バルブ16を設け
ている。17は冷水タンク6と給水口18を連通ずる給
水パイプである。冷水タンク6の下部には排水口19と
連通するドレンパイプ2oを設けている。21は濃縮飲
料貯蔵器冷蔵室11に挿入した濃縮飲料貯蔵器(以下濃
縮飲料〕(ツクと言う)であり、その先端は前記濃縮飲
料ノ(ツク21から濃縮飲料を抽出する濃縮液抽出コイ
ル22に挿入されている。濃縮飲料パック21先端部に
は)くルプ機構(図示せず)が内蔵されており、濃縮液
抽出コイル22との電磁気的相互作用により濃縮飲料液
を抽出するものである。23は給水口18から給水され
た水と濃縮飲料液とを混合するノズルである。
FIG. 2 is a sectional view, and in the figure, 6 is a cold water tank covered with a heat insulating material 7, a compressor 8. Condenser9. It is mounted on top of a cooling system consisting of a 10° evaporator wrapped around a cold water tank 6, a 12° evaporator wrapped around a refrigerator compartment 11, and a feeder 7 [13]. 14 is a water inlet provided on the back, and is directly connected to the water supply. Reference numeral 16 denotes a water injection pipe that communicates the water injection port 14 with the cold water tank 6, and a water injection valve 16 for controlling the amount of water is provided therebetween. 17 is a water supply pipe that communicates the cold water tank 6 and the water supply port 18. A drain pipe 2o communicating with a drain port 19 is provided at the bottom of the cold water tank 6. Reference numeral 21 denotes a concentrated beverage storage device (hereinafter referred to as concentrated beverage) inserted into the refrigerator compartment 11, and its tip is connected to a concentrated liquid extraction coil 22 for extracting the concentrated beverage from the concentrated beverage storage device 21. A curling mechanism (not shown) is built into the tip of the concentrated beverage pack 21, and extracts the concentrated beverage through electromagnetic interaction with the concentrated beverage extracting coil 22. . 23 is a nozzle for mixing the water supplied from the water supply port 18 and the concentrated drinking liquid.

24は濃縮飲料供給装置の全体制御を行う制御回路であ
り、濃縮飲料液と水との混合比Aと希釈飲料液の消費単
位量Bを予め設定しであるメモリーカード26とこのカ
ード26の内容を読み出すカードリーダ部26とを具備
している。メモリーカード26は本体1とは別部品とな
っている。
24 is a control circuit that performs overall control of the concentrated beverage supply device, and includes a memory card 26 in which the mixing ratio A of concentrated beverage liquid and water and the consumption unit amount B of diluted beverage liquid are preset, and the contents of this card 26. It is equipped with a card reader section 26 for reading out the information. The memory card 26 is a separate part from the main body 1.

次に第3図に示す!!′縮飲料供給装置の電気回路につ
いて説明する。27は商用の某流電源、3は電源スィッ
チであシ、電流ヒユーズ28を介して、電源ランプ4が
接続され、感温部を冷水タンク6に密着して設置した第
1サーモスタツト29を介して圧縮機8と送風機13が
並列接続され、さらに第2サーモスタツト30を介して
電磁弁31が並列接続され、電源トランス32の一次側
が接続されている。前記電源トランス32の二次側には
、マイクロコンピュータ33および周辺回路から構成さ
れた制御回路24を接続している。
Next, it is shown in Figure 3! ! 'The electric circuit of the compressed beverage supply device will be explained. 27 is a commercial power supply with a certain current, 3 is a power switch, a power lamp 4 is connected through a current fuse 28, and a first thermostat 29 whose temperature sensing part is installed in close contact with the cold water tank 6 is connected. A compressor 8 and a blower 13 are connected in parallel, a solenoid valve 31 is connected in parallel via a second thermostat 30, and the primary side of a power transformer 32 is connected. A control circuit 24 composed of a microcomputer 33 and peripheral circuits is connected to the secondary side of the power transformer 32.

前記制御回路24には、入力として抽出スイッチ6、濃
縮飲料液と水との混合比Aと希釈飲料液の消費単位量B
を予め設定しであるメモリーカード26の内容を読み出
すカードリーダ部26を有してお9、出力として注水パ
ルプ16と濃縮液抽出コイル22を有している。
The control circuit 24 has as inputs an extraction switch 6, a mixing ratio A of concentrated beverage liquid and water, and a consumption unit amount B of diluted beverage liquid.
It has a card reader section 26 for reading out the contents of a memory card 26 which is set in advance, and has a water injection pulp 16 and a concentrate extracting coil 22 as outputs.

上記のように構成された濃縮飲料供給装置について、第
4図のフローチャートを用いて動作を説明する。
The operation of the concentrated beverage supply device configured as described above will be explained using the flowchart shown in FIG. 4.

冷水タンク6内の水は冷却システムにより構成された蒸
発器10によυ冷却される。
The water in the cold water tank 6 is υ cooled by an evaporator 10 constituted by a cooling system.

まず、ステップ34においてカードリーダ部26でメモ
リーカード26を検知したら内容の読み出しを行なう。
First, in step 34, when the card reader section 26 detects the memory card 26, the contents are read out.

次にステップ36において読みとった濃縮飲料液と水と
の混合比Aと消費単位量Bとの正誤判定の上、八及びB
の値を設定する。混合比Aは1:1から1:99まで1
きざみで設定が可能である。消費単位量Bは10CCか
ら990CCまで10CCきざみで設定が可能である。
Next, after determining whether the mixing ratio A of concentrated beverage liquid and water read in step 36 and the consumption unit amount B are correct or incorrect, 8 and B
Set the value of The mixing ratio A is 1 from 1:1 to 1:99.
Settings can be made in increments. The consumption unit amount B can be set in 10CC increments from 10CC to 990CC.

そして、ステップ38.37において制御回路24中の
マイクロコンピュータ33が、設定された混合比Aと消
費単位量Bとから、濃縮飲料抽出コイル22の駆動パル
ス数Cと注水パルプ16の駆動時間りを下記計算式に基
づき演算する。
Then, in step 38.37, the microcomputer 33 in the control circuit 24 calculates the number of driving pulses C of the concentrated beverage extraction coil 22 and the driving time of the water injection pulp 16 from the set mixing ratio A and the consumption unit amount B. Calculate based on the formula below.

ここで、Eは1パルヌ当りの濃縮飲料抽出量であシ、濃
縮飲料液パツク17先端部に内蔵されたバルブ機構(図
示せず)と濃縮液抽出コイル22により決まるものであ
る。通常は0.2CC/パルスであシ、1パルスは0.
1秒である。Fは1秒当りの給水量であシ、注水パルプ
16、冷水タンク6、注水パイプ16及び給水パイプ1
7より成る給水系により決まるものである。通常は20
CC/秒である。
Here, E is the amount of concentrated beverage extracted per parnu, which is determined by a valve mechanism (not shown) built in the tip of the concentrated beverage pack 17 and the concentrated fluid extraction coil 22. Normally it is 0.2CC/pulse, and one pulse is 0.2CC/pulse.
It is 1 second. F is the water supply amount per second, water injection pulp 16, cold water tank 6, water injection pipe 16, and water supply pipe 1
This is determined by the water supply system consisting of 7 components. Usually 20
CC/sec.

例えば、混合比Aが26、即ちに26、消費単位量Bが
150CC11秒当シの濃縮飲料抽出量Eが0.2CC
/パルス、1秒当シの給水量Fが20cc/秒の場合に
は、 濃縮飲料抽出コイル22の駆動パルス数Cは注水パルプ
16の駆動時間りは と演算され、演算結果はマイクロコンピュータ33内の
RAMに記憶される。
For example, the mixing ratio A is 26, that is, 26, the consumption unit amount B is 150 CC, and the concentrated beverage extraction amount E per 11 seconds is 0.2 CC.
/pulse, when the water supply amount F per second is 20 cc/second, the driving pulse number C of the concentrated beverage extraction coil 22 is calculated based on the driving time of the water injection pulp 16, and the calculation result is stored in the microcomputer 33. is stored in the RAM.

次ニ、ステップ38においてユーザーが操作部2の抽出
ヌイッチ6を押すと、その信号が制御回路24に入力さ
れ、ステップ39においてコーヒーの抽出が行なわれる
。即ち、制御回路24からの出力によυ濃縮液抽出コイ
ル22がパルス数0回だけ駆動し、一定量の濃縮飲料液
を抽出する。
Next, in step 38, when the user presses the brewing switch 6 of the operating section 2, the signal is input to the control circuit 24, and coffee is extracted in step 39. That is, the υ concentrated liquid extracting coil 22 is driven by the output from the control circuit 24 for only 0 pulses to extract a predetermined amount of concentrated beverage liquid.

同時に注水パルプ16が時間りだけ駆動して水道から一
定量の水が注水バイブを通じて冷水タンク6に注水され
、その水圧により冷水タンクθ内の冷水が給水バイブ1
7を通じて給水口16から給水される。そして、濃縮飲
料液と冷却水が混合されてノズル23から1杯分(消費
単位量)のコーヒーが供給されるものである。
At the same time, the water injection pulp 16 is driven for a certain amount of time, and a certain amount of water is injected from the tap into the cold water tank 6 through the water injection vibrator.
Water is supplied from the water supply port 16 through the water supply port 7 . Then, the concentrated beverage liquid and cooling water are mixed and one cup of coffee (consumption unit amount) is supplied from the nozzle 23.

前記の例示の場合には、濃縮液抽出コイル22が29回
パルス駆動して6,8匡のコーヒー濃縮液が抽出される
。同時に、注水パルプが7.2秒間駆動して144.2
 CHの冷水が給水されて、ノズル23から1杯分(1
50CC)のアイスコーヒーが供給される。
In the above example, the concentrate extraction coil 22 is pulsed 29 times to extract 6.8 squares of coffee concentrate. At the same time, the water injection pulp is driven for 7.2 seconds to 144.2
CH cold water is supplied and one cup (1 cup) is supplied from nozzle 23.
50cc) of iced coffee is provided.

以上のように本実施例によれば、コーヒーを抽出する準
備として紙フィルターを敷きコーヒー粉を必要介入れる
作業は不用で人手を要さずにワンタッチでアイスコーヒ
ー等の濃縮飲料が供給できるものである。また、コーヒ
ーを抽出した後の処理として、紙フィルターとコーヒー
かすを捨てる作業も不要である。また、1杯毎の抽出が
可能であるため、余ったコーヒーが酸化して味が劣化し
廃棄することもないので経済的でコーヒー品質が一定化
する。そして、濃縮飲料液と水との混合比Aと、希釈飲
料液の消費単位量Bをメモリーカード26により自由に
ワンタッチで設定できるので、ユーザーニーズにきめ細
かく対応してコーヒーの味と量を容易に変えられ、しか
も設定後はコーヒー品質の一定化がはかれるものである
。さらに設定部をメモリーカード25で行なうようにし
たためそのメモリーカード26をキーになる人が持つよ
うにすれば不特定多数の人が設定変更し得なくなり、特
にコーヒー品質の管理が行なえやすくなる。
As described above, according to this embodiment, it is possible to dispense concentrated beverages such as iced coffee with a single touch without the need for manual intervention and the work of laying a paper filter and adding coffee powder in preparation for coffee extraction. be. Additionally, there is no need to dispose of paper filters and coffee grounds after brewing coffee. In addition, since it is possible to extract each cup of coffee, there is no need to discard leftover coffee due to oxidation and deterioration of taste, making it economical and ensuring consistent coffee quality. Since the mixing ratio A of concentrated beverage liquid and water and the consumption unit amount B of diluted beverage liquid can be freely set with one touch using the memory card 26, it is possible to easily adjust the taste and amount of coffee in accordance with the user's needs. It can be changed, and after setting, the coffee quality can be kept constant. Furthermore, since the setting section is carried out using the memory card 25, if the key person holds the memory card 26, the settings cannot be changed by an unspecified number of people, making it easier to manage coffee quality in particular.

尚、実施例においてはタンクは冷水タンクとしたが、温
水タンクとしてよいことは言うまでもない。またメモリ
ーカード25の記憶内容を直接的な、濃縮飲料液抽出手
段22の駆動パルス数Cと給水手段16の駆動時間りと
にしてもよく、この場合は演算制御回路24の演算が簡
素化でき回路のスピードアップと合理化が図れることと
なる。
In the embodiment, the tank is a cold water tank, but it goes without saying that a hot water tank may also be used. Further, the memory contents of the memory card 25 may be directly set to the driving pulse number C of the concentrated beverage extracting means 22 and the driving time of the water supply means 16. In this case, the calculation of the calculation control circuit 24 can be simplified. This will speed up and streamline the circuit.

発明の効果 以上の如く本発明は、濃縮飲料液貯蔵器と、前記濃縮飲
料液貯蔵器から濃縮飲料液を抽出する濃縮飲料液抽出手
段と、給水手段と、!l縮飲料液の量と水の量を設定す
るメモリーカードと、希釈飲料液を消費単位量供給する
抽出ヌイッチと、前記メモリーカードの内容を読みとり
設定した濃縮飲料液量と水量とから前記濃縮飲料液抽出
手段の駆動パルス数Cと前記給水手段の駆動時間りとだ
け駆動させる演算制御回路とから構成されたものである
。従って、コーヒーを抽出する準備として紙フィルター
を敷きコーヒー粉を必要介入れる作業は不要であり、人
手を要さずにワンタッチでアイスコーヒー等の濃縮飲料
が供給できるものである。
Effects of the Invention As described above, the present invention provides a concentrated beverage storage device, a concentrated beverage extraction means for extracting concentrated beverage from the concentrated beverage storage device, and a water supply device. A memory card that sets the amount of condensed beverage liquid and the amount of water, an extraction unit that supplies the consumption unit amount of diluted beverage liquid, and reads the contents of the memory card and extracts the concentrated beverage from the set amount of concentrated beverage liquid and water amount. It is composed of an arithmetic control circuit that drives the liquid extracting means by the number of driving pulses C and the water supplying means by the driving time. Therefore, there is no need to prepare for coffee extraction by placing a paper filter and adding coffee powder, and concentrated beverages such as iced coffee can be supplied with a single touch without the need for manpower.

また、コーヒーを抽出した後の処理として、紙フィルタ
ーとコーヒーかすを捨てる作業も不要である。また、1
杯毎の抽出が可能であるため、余ったコーヒーが酸化し
て味が劣化し廃棄することもないので経済的でコーヒー
品質の安定化が図れる。
Additionally, there is no need to dispose of paper filters and coffee grounds after brewing coffee. Also, 1
Since it is possible to extract each cup, there is no need to discard leftover coffee, which would oxidize and deteriorate its taste, making it economical and ensuring stable coffee quality.

そして、濃縮飲料液の量と水の量とをメモリーカードに
より自由にワンタッチで設定できるので、ユーザーニー
ズにきめ細かく対応してコーヒーの味と量を容易に変え
られ、しかも設定後はコーヒー品質の一定化がはかれる
ものである。さらに設足部をメモリーカードで行なうよ
うにしたためそのメモリーカードをキーになる人が持つ
ようにすれば、不特定多数の人が設定変更し得なくなり
、特にコーヒー品質の管理が行なえやすくなシ、実用的
効果は犬である。
In addition, the amount of concentrated beverage liquid and water can be freely set with a single touch using a memory card, so the taste and amount of coffee can be easily changed in accordance with the user's needs, and the coffee quality remains constant after setting. It is something that can be measured. Furthermore, since the installation part is done using a memory card, if the key person has the memory card, it will not be possible for an unspecified number of people to change the settings, which will make it easier to manage coffee quality in particular. Practical effects are dogs.

【図面の簡単な説明】[Brief explanation of the drawing]

第1図は本発明の一実施例の濃縮飲料供給装置の外観斜
視図、第2図は同装置の構成図、第3図は同装置の電気
回路図、第4図は同装置の動作を示すフローチャート、
第6図は従来例のコーヒーサーバーの構成図である。 6・・・・・・抽出スイッチ、6・・・・・・冷水タン
ク、16・・・・・・給水手段(注水バルブ)、21・
・・・・濃縮飲料液貯蔵器、22・・・・・・濃縮飲料
液抽出手段、24・・・・・・演算制御回路、25・・
・・・・メモリーカード、26・・・・・・カードリー
ダ。 代理人の氏名 弁理士 粟 野 重 孝 ほか1基筒 図 2/−一恵網成ハ6ツグ 22−  濃縮液抽出子役 ?4−演算制御四跨 石−メモリーカード。 26−  吏−ト′ソーダ節 富 図 第 図
Fig. 1 is an external perspective view of a concentrated beverage dispensing device according to an embodiment of the present invention, Fig. 2 is a configuration diagram of the device, Fig. 3 is an electric circuit diagram of the device, and Fig. 4 shows the operation of the device. Flowchart showing,
FIG. 6 is a block diagram of a conventional coffee server. 6...Extraction switch, 6...Cold water tank, 16...Water supply means (water injection valve), 21.
...Concentrated beverage storage device, 22...Concentrated beverage extraction means, 24...Arithmetic control circuit, 25...
...Memory card, 26...Card reader. Name of agent Patent attorney Shigetaka Awano and 1 other person Figure 2/- Kazue Aminariha 6 Tsugu 22 - Concentrate extractor? 4-Arithmetic control four-straddle stone-memory card. 26- Soda set wealth map diagram

Claims (3)

【特許請求の範囲】[Claims] (1)濃縮飲料液貯蔵器と、前記濃縮飲料液貯蔵器から
濃縮飲料液を抽出する濃縮飲料液抽出手段と、水を貯え
るタンクと、前記タンクから水を供給する給水手段と、
前記濃縮飲料液の量と前記水の量とを設定するメモリー
カードと、前記メモリーカードの内容を読みとるカード
リーダと、前記メモリーカードの内容を読みとり設定し
た濃縮飲料液量と水量に基づき前記抽出スイッチからの
入力信号により濃縮飲料液抽出手段と給水手段を駆動さ
せる演算制御回路とより構成される濃縮飲料供給装置。
(1) a concentrated beverage storage device, a concentrated beverage extraction device for extracting concentrated beverage from the concentrated beverage storage device, a tank for storing water, and a water supply device for supplying water from the tank;
a memory card for setting the amount of concentrated beverage liquid and the amount of water; a card reader for reading the contents of the memory card; and the extraction switch based on the set amount of concentrated beverage liquid and water by reading the contents of the memory card. A concentrated beverage supply device comprising an arithmetic control circuit that drives a concentrated beverage extracting means and a water supply means in response to an input signal from the.
(2)前記メモリーカードに記憶される内容を濃縮飲料
液と水との混合比Aおよび前記濃縮飲料液と水との希釈
飲料液の消費単位量Bとして設定されたメモリーカード
と、前記メモリーカードの内容を読みとり設定した混合
比Aと消費単位量Bとから前記濃縮飲料液抽出手段の駆
動パルス数Cと前記給水手段の駆動時間Dとを下記式に
て演算し、C=[1/(1+A)]×B÷E (E:濃縮飲料液抽出手段の1パルス 当りの濃縮飲料抽出量) D=[A/(1+A)]×B÷F (F:給水手段の1秒当りの給水量) 前記抽出スイッチからの入力信号により濃縮液抽出手段
をパルス数Cだけ、給水手段を時間Dだけ駆動させる演
算制御回路とより構成される特許請求の範囲第1項記載
の濃縮飲料供給装置。
(2) A memory card in which the contents stored in the memory card are set as a mixing ratio A of concentrated beverage liquid and water and a consumption unit amount B of a diluted beverage liquid of the concentrated beverage liquid and water, and the memory card; The number of drive pulses C of the concentrated beverage extracting means and the drive time D of the water supply means are calculated from the mixing ratio A and the consumption unit amount B by the following formula, and C=[1/( 1+A)]×B÷E (E: Amount of concentrated beverage extracted per pulse of the concentrated beverage extraction means) D=[A/(1+A)]×B÷F (F: Amount of water supplied per second of the water supply means 2. The concentrated beverage supply device according to claim 1, further comprising an arithmetic control circuit that drives the concentrated liquid extraction means for a number of pulses C and the water supply means for a time D based on an input signal from the extraction switch.
(3)前記メモリーカードに記憶される内容を前記濃縮
飲料液抽出手段の駆動パルス数Cと前記給水手段の駆動
時間Dとして設定されたメモリーカードと、前記メモリ
ーカードの内容を読みとり設定した値に基づき前記抽出
スイッチからの入力信号により濃縮飲料液抽出手段を前
記駆動パルス数Cだけおよび給水手段を前記駆動時間D
だけ駆動させる演算制御回路とより構成される特許請求
の範囲第1項記載の濃縮飲料供給装置。
(3) The contents stored in the memory card are set as the drive pulse number C of the concentrated beverage extraction means and the drive time D of the water supply means, and the contents of the memory card are read and set to the values set. Based on the input signal from the extraction switch, the concentrated beverage extracting means is activated by the driving pulse number C and the water supplying means is activated for the driving time D.
The concentrated beverage supply device according to claim 1, comprising an arithmetic and control circuit that drives the concentrated beverage.
JP1033059A 1989-02-13 1989-02-13 Condensed drink feeding equipment Pending JPH02219790A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP1033059A JPH02219790A (en) 1989-02-13 1989-02-13 Condensed drink feeding equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP1033059A JPH02219790A (en) 1989-02-13 1989-02-13 Condensed drink feeding equipment

Publications (1)

Publication Number Publication Date
JPH02219790A true JPH02219790A (en) 1990-09-03

Family

ID=12376176

Family Applications (1)

Application Number Title Priority Date Filing Date
JP1033059A Pending JPH02219790A (en) 1989-02-13 1989-02-13 Condensed drink feeding equipment

Country Status (1)

Country Link
JP (1) JPH02219790A (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0610198U (en) * 1992-07-16 1994-02-08 ホシザキ電機株式会社 Beverage dispenser dispenser
JP2007261621A (en) * 2006-03-28 2007-10-11 Sanyo Electric Co Ltd Beverage dispenser
JP2015029544A (en) * 2013-07-31 2015-02-16 パナソニック株式会社 Beverage dispenser
JP2017127650A (en) * 2009-11-12 2017-07-27 フォーミュラナウ,エルエルシー. Mixing apparatus and methods for mixing liquid with mixture using the same

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0610198U (en) * 1992-07-16 1994-02-08 ホシザキ電機株式会社 Beverage dispenser dispenser
JP2007261621A (en) * 2006-03-28 2007-10-11 Sanyo Electric Co Ltd Beverage dispenser
JP4703457B2 (en) * 2006-03-28 2011-06-15 三洋電機株式会社 Beverage supply equipment
US8069883B2 (en) 2006-03-28 2011-12-06 Sanyo Electric Co., Ltd. Beverage supply device
JP2017127650A (en) * 2009-11-12 2017-07-27 フォーミュラナウ,エルエルシー. Mixing apparatus and methods for mixing liquid with mixture using the same
US10213751B2 (en) 2009-11-12 2019-02-26 Formulanow, Llc Apparatus and method for preparing a liquid mixture
JP2019088845A (en) * 2009-11-12 2019-06-13 フォーミュラナウ,エルエルシー. Mixing apparatus and methods for mixing liquid with mixture using the same
JP2015029544A (en) * 2013-07-31 2015-02-16 パナソニック株式会社 Beverage dispenser

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